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首页> 外文期刊>IEEE Transactions on Industry Applications >Analysis and Design of Impulse-Commutated Zero-Current-Switching Single-Inductor Current-Fed Three-Phase Push–Pull Converter
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Analysis and Design of Impulse-Commutated Zero-Current-Switching Single-Inductor Current-Fed Three-Phase Push–Pull Converter

机译:脉冲换相零电流开关单电感电流馈电三相推挽变换器的分析与设计

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摘要

Impulse commutation obtains zero current commutation of devices in a circuit with a short resonance impulse using a simple resonant tank. This concept has been studied, extended, and implemented for a three-phase push-pull current-fed single-inductor topology to achieve soft commutation and device voltage clamping solving the traditional issue of device turn-off voltage overshoot. The push-pull topology is attractive owing to single inductor, all common source devices connected to common supply ground, and reduced gate driving requirements. Detailed operation, analysis, and design of this topology have been reported with impulse commutation. With a small resonant tank and partial resonance, impulse commutation procures merits of voltage clamping, low circulating current, and load adaptive zero-current switching of the devices. Variable-frequency modulation regulates load voltage and maintains the impulse commutation with source voltage variation. Experimental results on a 1-kW proof-of-concept hardware prototype are demonstrated to observe the operation, performance, and verify the proposed concept and claims.
机译:脉冲换向使用简单的谐振电路在具有短谐振脉冲的电路中获得零电流换向。已经针对三相推挽式电流馈电单电感器拓扑研究,扩展和实现了这一概念,以实现软整流和器件电压钳位,从而解决了传统的器件关断电压过冲问题。推挽式拓扑之所以具有吸引力,是因为它具有单个电感器,所有公共源设备都连接到公共电源地,并且降低了栅极驱动要求。已通过脉冲换向报告了该拓扑的详细操作,分析和设计。凭借较小的谐振储能和部分谐振,脉冲换向可实现电压钳位,低循环电流和负载自适应零电流开关的优点。可变频率调制可调节负载电压,并保持脉冲换向与电源电压的变化。演示了在1kW概念验证硬件原型上的实验结果,以观察其运行,性能并验证所提出的概念和权利要求。

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